diff options
Diffstat (limited to 'tools/objtool/klp-sympos.c')
| -rw-r--r-- | tools/objtool/klp-sympos.c | 421 |
1 files changed, 421 insertions, 0 deletions
diff --git a/tools/objtool/klp-sympos.c b/tools/objtool/klp-sympos.c new file mode 100644 index 000000000..dfca9dd74 --- /dev/null +++ b/tools/objtool/klp-sympos.c @@ -0,0 +1,421 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Compute "sympos", the position used by livepatch to disambiguate + * duplicate symbol names in the patched object. + */ +#include <stdlib.h> +#include <string.h> +#include <fcntl.h> + +#include <objtool/objtool.h> +#include <objtool/warn.h> +#include <objtool/endianness.h> +#include <objtool/klp.h> + +#include <linux/string.h> + +struct vmlinux_sym { + struct hlist_node hash; + const char *name; + u64 addr; +}; + +struct vmlinux_symid { + struct hlist_node hash; + u64 id; + u64 addr; +}; + +struct vmlinux_o_symid { + struct hlist_node hash; + u64 id; + unsigned int sym_idx; +}; + +static DEFINE_HASHTABLE(vmlinux_o_symids, 16); + +/* + * The original linked kernel, found next to the orig vmlinux.o. Read with raw + * libelf rather than elf_open_read(): only the symbol table and the resolved + * .klp.symid table are needed, not the (huge) instruction/reloc machinery. + * + * Both tables are built once by read_orig_vmlinux(). The Elf handle stays + * open because the hashed names point into its mmapped string table. + */ +static struct { + Elf *elf; + DECLARE_HASHTABLE(syms, 16); /* name -> address */ + DECLARE_HASHTABLE(symids, 16); /* .klp.symid id -> address */ +} vmlinux; + +/* + * Would the symbol be visible to the runtime's kallsyms-based symbol lookup? + */ +static bool vmlinux_sym_in_kallsyms(Elf *elf, GElf_Sym *sym) +{ + unsigned int type = GELF_ST_TYPE(sym->st_info); + GElf_Shdr shdr; + Elf_Scn *scn; + + if (sym->st_shndx == SHN_UNDEF || sym->st_shndx >= SHN_LORESERVE) + return false; + + if (type == STT_SECTION || type == STT_FILE) + return false; + + scn = elf_getscn(elf, sym->st_shndx); + if (!scn || !gelf_getshdr(scn, &shdr)) + return false; + + return shdr.sh_flags & SHF_ALLOC; +} + +static int read_orig_vmlinux(const char *filename) +{ + size_t shstrndx, nr_syms = 0, nr_symids = 0, strtab_idx = 0; + Elf_Data *symtab_data = NULL, *symid_data = NULL; + struct klp_symid *symids; + Elf_Scn *scn = NULL; + GElf_Ehdr ehdr; + int fd; + + fd = open(filename, O_RDONLY); + if (fd == -1) { + ERROR_GLIBC("can't open '%s'", filename); + return -1; + } + + if (elf_version(EV_CURRENT) == EV_NONE) { + ERROR_ELF("elf_version"); + return -1; + } + + vmlinux.elf = elf_begin(fd, ELF_C_READ_MMAP, NULL); + if (!vmlinux.elf) { + ERROR_ELF("elf_begin"); + return -1; + } + + if (!gelf_getehdr(vmlinux.elf, &ehdr)) { + ERROR_ELF("gelf_getehdr"); + return -1; + } + + if (elf_getshdrstrndx(vmlinux.elf, &shstrndx)) { + ERROR_ELF("elf_getshdrstrndx"); + return -1; + } + + while ((scn = elf_nextscn(vmlinux.elf, scn))) { + const char *name; + GElf_Shdr shdr; + + if (!gelf_getshdr(scn, &shdr)) { + ERROR_ELF("gelf_getshdr"); + return -1; + } + + if (shdr.sh_type == SHT_SYMTAB) { + symtab_data = elf_getdata(scn, NULL); + if (!symtab_data) { + ERROR_ELF("elf_getdata"); + return -1; + } + nr_syms = shdr.sh_size / shdr.sh_entsize; + strtab_idx = shdr.sh_link; + continue; + } + + name = elf_strptr(vmlinux.elf, shstrndx, shdr.sh_name); + if (name && !strcmp(name, KLP_SYMID_SEC)) { + if (shdr.sh_size % sizeof(struct klp_symid)) { + ERROR("%s: %s: struct klp_symid size mismatch", + filename, KLP_SYMID_SEC); + return -1; + } + symid_data = elf_getdata(scn, NULL); + if (!symid_data) { + ERROR_ELF("elf_getdata"); + return -1; + } + nr_symids = shdr.sh_size / sizeof(struct klp_symid); + } + } + + if (!symtab_data) { + ERROR("%s: missing symbol table", filename); + return -1; + } + + if (!symid_data) { + ERROR("%s: missing %s section, kernel not built with CONFIG_KLP_BUILD?", + filename, KLP_SYMID_SEC); + return -1; + } + + for (size_t i = 0; i < nr_syms; i++) { + struct vmlinux_sym *vsym; + const char *name; + GElf_Sym s; + + if (!gelf_getsym(symtab_data, i, &s)) { + ERROR_ELF("gelf_getsym"); + return -1; + } + + if (!vmlinux_sym_in_kallsyms(vmlinux.elf, &s)) + continue; + + name = elf_strptr(vmlinux.elf, strtab_idx, s.st_name); + if (!name) + continue; + + vsym = calloc(1, sizeof(*vsym)); + if (!vsym) { + ERROR_GLIBC("calloc"); + return -1; + } + + vsym->name = name; + vsym->addr = s.st_value; + hash_add(vmlinux.syms, &vsym->hash, str_hash(name)); + } + + symids = symid_data->d_buf; + + for (size_t i = 0; i < nr_symids; i++) { + struct vmlinux_symid *vsymid; + + vsymid = calloc(1, sizeof(*vsymid)); + if (!vsymid) { + ERROR_GLIBC("calloc"); + return -1; + } + + vsymid->id = __bswap_if_needed(&ehdr, symids[i].id); + vsymid->addr = __bswap_if_needed(&ehdr, symids[i].addr); + hash_add(vmlinux.symids, &vsymid->hash, vsymid->id); + } + + /* the fd and Elf handle stay open, the hashed names live in the mmap */ + return 0; +} + +/* + * Read the orig vmlinux.o's .klp.symid table, an array of entries whose 'addr' + * fields have relocs to the symbols they describe. + */ +static int read_vmlinux_o_symids(struct elf *vmlinux_o) +{ + struct section *sec; + + for_each_sec(vmlinux_o, sec) { + unsigned long nr; + + if (strcmp(sec->name, KLP_SYMID_SEC)) + continue; + + if (sec_size(sec) % sizeof(struct klp_symid)) { + ERROR("%s: %s: struct klp_symid size mismatch", + vmlinux_o->name, KLP_SYMID_SEC); + return -1; + } + + nr = sec_size(sec) / sizeof(struct klp_symid); + + for (unsigned long i = 0; i < nr; i++) { + unsigned long offset = i * sizeof(struct klp_symid); + struct vmlinux_o_symid *entry; + struct klp_symid *symid; + struct reloc *reloc; + + entry = calloc(1, sizeof(*entry)); + if (!entry) { + ERROR_GLIBC("calloc"); + return -1; + } + + symid = sec->data->d_buf + offset; + entry->id = bswap_if_needed(vmlinux_o, symid->id); + + reloc = find_reloc_by_dest(vmlinux_o, sec, + offset + offsetof(struct klp_symid, addr)); + if (!reloc) { + ERROR("%s: missing reloc for %s entry", + vmlinux_o->name, KLP_SYMID_SEC); + return -1; + } + entry->sym_idx = reloc->sym->idx; + + hash_add(vmlinux_o_symids, &entry->hash, entry->sym_idx); + } + } + + return 0; +} + +int klp_sympos_init(struct elf *orig) +{ + char *filename; + int ret; + + if (!str_ends_with(objname, "vmlinux.o")) + return 0; + + if (read_vmlinux_o_symids(orig)) + return -1; + + filename = strndup(objname, strlen(objname) - 2); + if (!filename) { + ERROR_GLIBC("strndup"); + return -1; + } + + ret = read_orig_vmlinux(filename); + free(filename); + + return ret; +} + +/* Find the symbol's id in the orig vmlinux.o's .klp.symid table */ +static int find_vmlinux_o_symid(struct symbol *sym, u64 *id) +{ + struct vmlinux_o_symid *entry; + + hash_for_each_possible(vmlinux_o_symids, entry, hash, sym->idx) { + if (entry->sym_idx == sym->idx) { + *id = entry->id; + return 0; + } + } + + ERROR("no %s entry for symbol %s in orig vmlinux.o", KLP_SYMID_SEC, + sym->name); + return -1; +} + +/* Find the symbol's final address in the orig vmlinux's .klp.symid table */ +static int find_vmlinux_symid_addr(u64 id, u64 *addr) +{ + struct vmlinux_symid *symid; + + hash_for_each_possible(vmlinux.symids, symid, hash, id) { + if (symid->id == id) { + *addr = symid->addr; + return 0; + } + } + + return -1; +} + +/* + * Find the sympos of a vmlinux-local symbol by ranking its final address + * among the duplicately named symbols in the linked orig vmlinux, replicating + * the order in which kallsyms_on_each_match_symbol() counts them. + */ +static unsigned long find_vmlinux_sympos(struct symbol *sym) +{ + unsigned long nr_matches = 0, sympos = 1; + u32 key = str_hash(sym->name); + struct vmlinux_sym *vsym; + bool found = false; + u64 id, addr; + + hash_for_each_possible(vmlinux.syms, vsym, hash, key) + if (!strcmp(vsym->name, sym->name)) + nr_matches++; + + if (!nr_matches) { + ERROR("can't find symbol %s in orig vmlinux", sym->name); + return ULONG_MAX; + } + + /* + * Unique symbols don't need disambiguating. They also have no + * .klp.symid entry, which is only emitted for names duplicated in + * vmlinux.o, so the lookups below would fail. + */ + if (nr_matches == 1) + return 0; + + if (find_vmlinux_o_symid(sym, &id)) + return ULONG_MAX; + + if (find_vmlinux_symid_addr(id, &addr)) { + ERROR("no %s entry for symbol %s in orig vmlinux", KLP_SYMID_SEC, + sym->name); + return ULONG_MAX; + } + + hash_for_each_possible(vmlinux.syms, vsym, hash, key) { + if (strcmp(vsym->name, sym->name)) + continue; + + if (vsym->addr < addr) + sympos++; + else if (vsym->addr == addr) + found = true; + } + + if (!found) { + ERROR("%s address mismatch for symbol %s, stale orig vmlinux?", + KLP_SYMID_SEC, sym->name); + return ULONG_MAX; + } + + return sympos; +} + +static bool is_init_sym(struct symbol *sym) +{ + return strstarts(sym->sec->name, ".init"); +} + +/* + * "sympos" is used by livepatch to disambiguate duplicate symbol names. + */ +unsigned long klp_find_sympos(struct elf *elf, struct symbol *sym) +{ + unsigned long sympos = 0, nr_matches = 0; + bool has_dup = false; + struct symbol *s; + + if (is_init_sym(sym)) { + ERROR("%s: can't patch or reference init code/data", sym->name); + return ULONG_MAX; + } + + if (sym->bind != STB_LOCAL) + return 0; + + /* + * vmlinux: the final link reorders symbols relative to vmlinux.o, + * so the position needs to be derived from the linked orig vmlinux via + * the .klp.symid table. + */ + if (vmlinux.elf) + return find_vmlinux_sympos(sym); + + /* + * modules: the final .ko preserves symbol table order, so a + * symtab-order count here matches the runtime count done by + * module_kallsyms_on_each_symbol(). + */ + for_each_sym(elf, s) { + if (!strcmp(s->name, sym->name)) { + nr_matches++; + if (s == sym) + sympos = nr_matches; + else + has_dup = true; + } + } + + if (!sympos) { + ERROR("can't find sympos for %s", sym->name); + return ULONG_MAX; + } + + return has_dup ? sympos : 0; +} |
